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3D scaffolds), as well as demonstrated competence in assessing the efficacy of anticancer treatments and/or X-ray irradiation in these cellular models (or others), including the evaluation of cell
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, under the following conditions: Work Plan: The main objective of the proposed work is to implement and validate a computational methodology for the 3D geological modelling of complex mineralized systems
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applications.; - Advanced knowledge of 3D modeling (3D modeling, UV mapping, texturing, polygon optimization). Minimum requirements: - Experience with the Unity game engine; - Experience in creating 3D models
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; - Ciência ID: https://www.ciencia-id.pt/CienciaID/HomePage.aspx 13.Fellowship Agreement model: After the candidate selection and all information is received, it will be signed a fellowship agreement in
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 2 months ago
research by proteomic/RNAseq analysis of secretomes; Experience in cell culture, including advanced 3D models; Experience in cell and molecular biology techniques; Organisational skills and synthesis skills
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of software packages such as Matlab, SIMCA, R, Chenomx, and MetaboAnalyst, as well as relevant databases. FELASA training and experience in animal experimentation, alongside experience in 2D and 3D cell culture
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. The fellowship is due to start in July 2026. . WORK PLAN: The candidate must complete a PhD in accordance with the following plan: A. Development and optimisation of a 3D printer incorporating plasma technology
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supporting documentation, proven experience in all of the following areas: Computer vision and video processing (ingestion, ROI, 2D/3D keypoints, heatmaps); Deep learning and temporal modelling (CNNs
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curricular evaluation purposes, proven skills in programming, preferably Python; machine learning and artificial intelligence; language models and retrieval-augmented generation (RAG); ASR/TTS; diarisation